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Monte Carlo grain growth modeling with local temperature gradients

机译:蒙特卡罗谷物生长模型与局部温度梯度

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摘要

This work investigated the development of a Monte Carlo (MC) simulation approach to modeling grain growth in the presence of non-uniform temperature field that may vary with time. We first scale the MC model to physical growth processes by fitting experimental data. Based on the scaling relationship, we derive a grid site selection probability (SSP) function to consider the effect of a spatially varying temperature field. The SSP function is based on the differential MC step, which allows it to naturally consider time varying temperature fields too. We verify the model and compare the predictions to other existing formulations (Godfrey and Martin 1995 Phil. Mag. A 72 737-49; Radhakrishnan and Zacharia 1995 Metall. Mater. Trans. A 26 2123-30) in simple two-dimensional cases with only spatially varying temperature fields, where the predicted grain growth in regions of constant temperature are expected to be the same as for the isothermal case. We also test the model in a more realistic three-dimensional case with a temperature field varying in both space and time, modeling grain growth in the heat affected zone of a weld. We believe the newly proposed approach is promising for modeling grain growth in material manufacturing processes that involves time-dependent local temperature gradient.
机译:这项工作调查了蒙特卡罗(MC)模拟方法的开发,以在可能随时间变化的非均匀温度场的存在下建模晶粒生长。我们首先通过拟合实验数据将MC模型扩展到物理增长过程。基于缩放关系,我们推出了网站站点选择概率(SSP)功能,以考虑空间变化的温度场的效果。 SSP函数基于差分MC步骤,这允许它自然地考虑时间变化温度场。我们验证了模型,并将预测与其他现有配方(Godfrey和Martin 1995 Phil进行了比较。A 72 737-49; Radhakrishnan和Zacharia 1995 Metall。Mater。Trans。A 26 2123-30)在简单的二维案例中只有空间变化的温度场,其中恒温区域的预测晶粒生长预期与等温案例相同。我们还在一个更现实的三维外壳中测试模型,其空间和时间在空间和时间内变化,焊接热影响区域的晶粒生长。我们认为,新提出的方法是对涉及时间依赖的局部温度梯度的材料制造过程中的谷物生长建模。

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